The Boltzmann local physical kinetics forecasts the destruction of the superconductivity regime because of the heat movement of particles. Then the most fundamental distinction between a strange metal and a conventional metal is the absence of well-defined quasi-particles. We show that the mentioned “quasi-particles” are solitons, which are formed as a result of self-organization of ionized matter. Shortcomings of the Boltzmann physical kinetics consist in the local description of the transport processes on the level of infinitely small physical volumes as elements of diagnostics. The non-local physics leads to the theory of superconductivity including the high temperature diapason.
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Boris V Alexeev (Russian Technological University) - Doctor of physical-mathematical sciences (theoretical and mathematical physics) since 1973; professor in the Department of physics since 1974; Member of the Russian National Committee on Theoretical and Applied Mechanics (since 1987); Meritorious Science and Technics Worker of Russia since 1989.
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